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Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters

Rihards Mūrnieks

Abstract

This data management plan outlines the strategy for managing, storing, and sharing data generated in the postdoc project with the No. 1.1.1.9/LZP/2/25/287 "The Development of Entanglement-Based Quantum Network with Quantum Repeaters (EQNET)." The plan details the types of entanglement network simulation data to be collected, the formats for storing data, codes, and other relevant data arising from the project implementation. The scientific objective of thisproject is to investigate state-of-the-art quantum network architectures and quantum repeaters and combine theminto entanglement distribution network connecting two quantum computers in Helsinki, Finland andPoznan, Poland through the Baltic states of Estonia, Latvia, and Lithuania. Planned project actions includetheoretical research on quantum network technological design requirements, current solutions, available devicesand developing a simulation model of the proposed network. Expected result is a model of a quantum networkcapable of entanglement sharing using current quantum repeater device prototypes. EQNET project will have animpact on the overall research sector locally, support the Latvian RIS3 strategy and National DevelopmentPlan 2027, and contribute to the Quantum Internet Alliance (QIA) vision of a Europe-wide quantum networkthrough collaboration between European research and industry organizations.

Full text

Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters Version 1 Description This data management plan outlines the strategy for managing, storing, and sharing data generated in the postdoc project with the No. 1.1.1.9/LZP/2/25/287 "The Development of Entanglement-Based Quantum Network with Quantum Repeaters (EQNET)." The plan details the types of entanglement network simulation data to be collected, the formats for storing data, codes, and other relevant data arising from the project implementation. The scientific objective of this project is to investigate state-of-the-art quantum network architectures and quantum repeaters and combine them into entanglement distribution network connecting two quantum computers in Helsinki, Finland and Poznan, Poland through the Baltic states of Estonia, Latvia, and Lithuania. Planned project actions include theoretical research on quantum network technological design requirements, current solutions, available devices and developing a simulation model of the proposed network. Expected result is a model of a quantum network capable of entanglement sharing using current quantum repeater device prototypes. EQNET project will have an LICENSE:CC-BY-4.0 DOI: - 22/12/2025 impact on the overall research sector locally, support the Latvian RIS3 strategy and National Development Plan 2027, and contribute to the Quantum Internet Alliance (QIA) vision of a Europe-wide quantum network through collaboration between European research and industry organizations. Funder Grant Latvian Council of Science||LCS Development of EntanglementBased Quantum Network with Quantum Repeaters (EQNET) Researchers Rihards Murnieks (0000-0003-2034-9499) Organizations Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 1. Main Info Title of DMP: Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters Description: This data management plan outlines the strategy for managing, storing, and sharing data generated in the postdoc project with the No. 1.1.1.9/LZP/2/25/287 "The Development of Entanglement-Based Quantum Network with Quantum Repeaters (EQNET)." The plan details the types of entanglement network simulation data to be collected, the formats for storing data, codes, and other relevant data arising from the project implementation. The scientific objective of this project is to investigate state-of-the-art quantum network architectures and quantum repeaters and combine them into entanglement distribution network connecting two quantum computers in Helsinki, Finland and Poznan, Poland through the Baltic states of Estonia, Latvia, and Lithuania. Planned project actions include theoretical research on quantum network technological design requirements, current solutions, available devices and developing a simulation model of the proposed network. Expected result is a model of a quantum network capable of entanglement sharing using current quantum repeater device prototypes. EQNET project will have an impact on the overall research sector locally, support the Latvian RIS3 strategy and National Development Plan 2027, and contribute to the Quantum Internet Alliance (QIA) vision of a Europe-wide quantum network Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 through collaboration between European research and industry organizations. Researchers: Rihards Murnieks (0000-0003-2034-9499) Organizations: Contact: Mūrnieks Rihards ([email protected]) 2. Funding Funding organizations: Latvian Council of Science||LCS Grants: Development of Entanglement-Based Quantum Network with Quantum Repeaters (EQNET) Project: 3. License License: CC-BY-4.0 Access Rights: Public Publication Date: 2025-12-22 4. Templates Descriptions Fidelity of entangled links between two end-nodes in quantum entanglement network in Latvia based on abstract quantum memory module This dataset contains entangled link fidelity obtained in NetSquid simulation for the connection between two end-nodes in a 280 km-long quantum entanglement distribution network based on abstract quantum repeater nodes using NV-centre relaxation and coherence times. Data are obtained in two scenarios - using single-click and double-click Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 entanglement distribution protocols in two network topologies resulting from the realworld fiber grid limitations Template: LCS FARP Type: Dataset 1 Data Summary 1.1 Data Summary 1.1.1 What is the purpose of the data collection/generation? Data is collected to compare two quantum entanglement network topologies using two different entanglement distribution protocols and identify which network topology and protocol combination provides the best quality of service to be further used as the main topology for the quantum entanglement network in Latvia. 1.1.2 Type of data generated/collected • Textual data • Other Computer-generated data 1.1.3 Format of data generated/collected TXT 1.1.4 Expected size of the data – give expected size and choose unit of measurement KB 1.1.5 Are you re-using this data set? No 1.1.8 To whom the data might be useful ("data utility")? Other relevant remarks) Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 This data might be helpful for researchers working on quantum entanglement network research, and potentially for service providers to estimatethe entangled link quality of service 2 Research Data Management 2.1 Metadata and documentation 2.1.1 Will data be attributed with standard identification mechanism (e.g. persistent and unique identifiers such as Digital Object Identifiers – DOI)? Yes DOI 2.1.2 Do you plan to provide metadata for your data? Yes 2.1.3 Will you use any metadata standard? Yes Dublin Core 2.1.4 Will search keywords be provided that optimize possibilities for re-use? Yes 2.1.5 Will you follow any naming conventions for keywords? No 2.1.6 Will you provide clear version numbers? Yes 2.2 Making data openly accessible 2.2.1 What type of access the data generated/produced will have (choose one)? open (anyone is able to access data without restrictions) 2.2.2 Will you apply embargo period to access for your data? Yes Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 Comment: Until the scientific article is published 2.2.3 Will data, associated metadata, documentation and code be made accessible with means of a repository? Yes GitHub 2.2.4 What methods or software tools are needed to access the data? A text reader is required 2.2.5 Will documentation about the software needed to access the data included? No 2.3 Making data interoperable 2.3.1 Are the formats open to software applications and to recombination with different data sets? Yes 2.3.2 Will you use data standard vocabulary/taxonomy to make your data interoperable? No 2.4 Increase data re-use 2.4.1 How will the data be licensed to permit the widest re-use possible? Indicate the license planned to use Creative Commons Attribution 4.0 2.4.2 Are the data usable by third parties, in particular after the end of the project? Yes 2.4.5 Are data quality assurance processes provided? No Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025 3 Resources and Security 3.1 Allocation of resources 3.1.1 How will costs be covered for making data FAIR during project realization? Euro 3.1.2 Who will be responsible for data management in your project? Rihards Murnieks (0000-0003-2034-9499) 3.3 Ethical aspects 3.3.1 Are there any ethical or legal issues that could have an impact on data collection and sharing? No 3.3.2 Have you got/will you get permission from ethics committee to collect and process data (if applicable)? No 3.3.3 Is informed consent for data sharing and long term preservation included in questionnaires dealing with personal data, if applicable? No 3.3.4 Will data collected/generated include personal data/ sensitive information? No Powered by Data Management Plan | Data Management Plan for the Development of an Entanglement-Based Quantum Network with Quantum Repeaters LICENSE:CC-BY-4.0 DOI: - 22/12/2025